Ceramic Fabrication Technology by Roy W.Rice

By Roy W.Rice

Bridging the space among textbook technological know-how and real-world engineering and operational purposes, this reference offers entire and easy-to-follow summaries and reviews of fabrication thoughts for ceramic and ceramic composite specimens and elements. the writer addresses either traditional and substitute powder-based fabrication, chemical vapor deposition, soften processing, and response processing. themes contain the guidance of ceramic powders, plastic forming, colloidal processing, using ingredients to assist densification, sizzling urgent, the fabrication of filaments for reinforcement, quick prototyping, and gaseous impurities.

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Reed. Introduction to the Principles of Ceramic Processing. New York: John Wiley & Sons, 1988. 6. A. L. Messing, eds. Forming of Ceramics, Advances in Ceramics, Vol. 9. , 1984. 7. A. Knepper, ed. Agglomeration. New York: Interscience Publishers, 1962. 8. PJ. James. Isostatic Pressing Technology. London: Applied Science Publishers, 1983. 9. O. Pierson. Chemically Vapor Deposited Coatings. , 1981. lOa. S. Glasso. Chemical Vapor Deposited Materials. , Boca Raton, FL, 1991. lOb. O. Pierson. Handbook of CVD, Noyes Pub.

The final step is thermal decomposition of the salt to the desired oxide. The selection of the chemical process is impacted primarily by cost and the powder product character. Costs include those of the parent mineral and its processing, the acid or base, and the steps and facilities in the digestion, precipitation, and thermal decomposition (often referred to as calcining). Key aspects of required powder product character are chemical purity and particulate size and shape. Application of the above factors in some respects is a straightforward selection of the chemical route guided by both its costs and resultant powder character, but can be more complicated.

Note that improving gel-derived abrasive performance was in part obtained by seeding to enhance formation of alpha alumina, which was done before such seeding became a popular research topic. The above gelling of alkoxide-based sols to produce oxide powders, which occurs via polymerization, is but one chemical system in which polymerization plays a role. Lessing [63] has reviewed two others, namely polyesters of the popular Pechini type and cross-linked poly(acrylic acid) polymers, with the former having been used on over 100 different mixed-oxide compounds.

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